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Updated: Jun 16, 2026

Gene-environment Interaction Models to Unmask Susceptibility Mechanisms in Parkinson's Disease
Published on: January 7, 2014
Prosurvival effect of human wild-type alpha-synuclein on MPTP-induced toxicity to central but not peripheral
F Pérez-Sánchez1, M Milán, P Buendía
1Departament de Biologia cellular and Centro de Investigación Biomédica en Red sobre Enfermedades Neurodegenerativas (CIBERNED), Universitat de València, 46100 Burjassot, València, Spain. pacops@uv.es
Abstract:
In the present work we report the generation of a new line of alpha-synuclein (alpha-SYN) transgenic mice in which the human wild-type alpha-SYN cDNA is expressed under the control of a tyrosine hydroxylase (TH) promoter. We provide evidence that the ectopic protein is found in TH expressing neurons of both central and peripheral nervous systems. The transgene is expressed very early in development coinciding with the activity of the TH promoter and in the adult brain the human protein distributes normally to the nerve endings and cell bodies of dopaminergic nigral neurons without any evidence of abnormal aggregation. Our results indicate that expression of human wild-type alpha-SYN does not affect normal development or maintenance of TH immunoreactive nigral neurons, striatal dopamine content, or locomotor activity. Systemic administration of the parkinsonian neurotoxin 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) induces a loss of TH immunoreactive nigral neurons and terminals and of dopamine levels to the same degree in both transgenic and non-transgenic adult mice. Intoxication also results in a similar loss of cardiac noradrenaline in both genotypes. Surprisingly, cultured transgenic ventral mesencephalic fetal dopaminergic neurons exhibit complete resistance to cell death induced by 1-methyl-4-phenylpyridinium ion (MPP(+)) intoxication, without changes in dopamine transporter (DAT) surface levels. Interestingly, this protection is not observed in other populations of catecholaminergic neurons such as peripheral sympathetic neurons, despite their high sensitivity to MPP(+)in vitro.
Insights
This study generated alpha-synuclein (alpha-SYN) transgenic mice, finding they are resistant to MPP+ neurotoxicity in dopaminergic neurons, unlike peripheral neurons. This alpha-SYN expression did not impact normal development or response to MPTP.
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- Alpha-synuclein (alpha-SYN) aggregation is implicated in Parkinson's disease pathogenesis.
- Understanding alpha-SYN's role in neuronal vulnerability is crucial for developing therapeutic strategies.
Purpose of the Study:
- To investigate the impact of human wild-type alpha-SYN expression in dopaminergic neurons on neurotoxicity.
- To assess the response of alpha-SYN transgenic mice to parkinsonian neurotoxins.
Main Methods:
- Generation of alpha-SYN transgenic mice under a tyrosine hydroxylase (TH) promoter.
- Administration of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) and 1-methyl-4-phenylpyridinium ion (MPP+).
- Assessment of TH immunoreactivity, dopamine levels, noradrenaline levels, and cell survival in vitro and in vivo.
Main Results:
- Human wild-type alpha-SYN was successfully expressed in TH-expressing neurons without aggregation or affecting normal development.
- Transgenic and non-transgenic mice showed similar responses to MPTP-induced neurodegeneration.
- Cultured dopaminergic neurons from transgenic mice were resistant to MPP+-induced cell death, while peripheral sympathetic neurons were not.
Conclusions:
- Expression of human wild-type alpha-SYN confers resistance to MPP+ toxicity in dopaminergic neurons.
- This resistance is specific to dopaminergic neurons and not observed in peripheral catecholaminergic neurons.
- Alpha-SYN's role in neuroprotection warrants further investigation.

